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# Copyright (c) 2020 Cisco and/or its affiliates.
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at:
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.

*** Settings ***
| Resource | resources/libraries/robot/shared/default.robot
|
| Force Tags | 2_NODE_SINGLE_LINK_TOPO | PERFTEST | HW_ENV | NDRPDR
| ... | NIC_Intel-X710 | ETH | L2BDMACLRN | BASE | MEMIF | DOCKER | 2R6C
| ... | NF_DENSITY | CHAIN | NF_VPPIP4 | 12DCR1T | DRV_VFIO_PCI
| ... | eth-l2bd-2ch-24mif-12dcr1t-vppip4
|
| Suite Setup | Setup suite single link | performance
| Suite Teardown | Tear down suite | performance
| Test Setup | Setup test
| Test Teardown | Tear down test | performance | container
|
| Test Template | Local Template
|
| Documentation | **RFC2544: Pkt throughput L2BD test cases with memif 2 chains
| ... | 12 docker container*
|
| ... | *[Top] Network Topologies:* TG-DUT1-TG 2-node circular topology with
| ... | single links between nodes.
| ... | *[Enc] Packet Encapsulations:* Eth-IPv4 for L2 bridge domain.
| ... | *[Cfg] DUT configuration:* DUT1 is configured with two L2 bridge domains
| ... | and MAC learning enabled. DUT1 tested with ${nic_name}.\
| ... | Container is connected to VPP via Memif interface. Container is running
| ... | same VPP version as running on DUT. Container is limited via cgroup to
| ... | use cores allocated from pool of isolated CPUs. There are no memory
| ... | contraints.
| ... | *[Ver] TG verification:* TG finds and reports throughput NDR (Non Drop\
| ... | Rate) with zero packet loss tolerance and throughput PDR (Partial Drop\
| ... | Rate) with non-zero packet loss tolerance (LT) expressed in percentage\
| ... | of packets transmitted. NDR and PDR are discovered for different\
| ... | Ethernet L2 frame sizes using MLRsearch library.\
| ... | Test packets are generated by TG on links to DUTs. TG traffic profile
| ... | contains two L3 flow-groups (flow-group per direction, 254 flows per
| ... | flow-group) with all packets containing Ethernet header, IPv4 header
| ... | with IP protocol=61 and static payload. MAC addresses are matching MAC
| ... | addresses of the TG node interfaces.

*** Variables ***
| @{plugins_to_enable}= | dpdk_plugin.so | memif_plugin.so
| ${crypto_type}= | ${None}
| ${nic_name}= | Intel-X710
| ${nic_driver}= | vfio-pci
| ${osi_layer}= | L2
| ${overhead}= | ${0}
| ${nf_dtcr}= | ${2}
| ${nf_dtc}= | ${0.5}
| ${nf_chains}= | ${2}
| ${nf_nodes}= | ${6}
# Traffic profile:
| ${traffic_profile}= | trex-sl-2n3n-ethip4-ip4src254-2c6n
# Container
| ${container_engine}= | Docker
| ${container_chain_topology}= | chain_ip4

*** Keywords ***
| Local Template
| | [Documentation]
| | ... | [Cfg] DUT runs L2BD switching config.
| | ... | Each DUT uses ${phy_cores} physical core(s) for worker threads.
| | ... | [Ver] Measure NDR and PDR values using MLRsearch algorithm.\
| |
| | ... | *Arguments:*
| | ... | - frame_size - Framesize in Bytes in integer or string (IMIX_v4_1).
| | ... | Type: integer, string
| | ... | - phy_cores - Number of physical cores. Type: integer
| | ... | - rxq - Number of RX queues, default value: ${None}. Type: integer
| |
| | [Arguments] | ${frame_size} | ${phy_cores} | ${rxq}=${None}
| |
| | Set Test Variable | \${frame_size}
| |
| | Given Set Max Rate And Jumbo
| | And Add worker threads to all DUTs | ${phy_cores} | ${rxq}
| | And Pre-initialize layer driver | ${nic_driver}
| | And Apply startup configuration on all VPP DUTs
| | When Initialize layer driver | ${nic_driver}
| | And Initialize layer interface
| | ... | count=${nf_chains}
| | And Start containers for test
| | ... | nf_chains=${nf_chains} | nf_nodes=${nf_nodes} | auto_scale=${False}
| | And Initialize L2 Bridge Domain for multiple chains with memif pairs
| | ... | nf_chains=${nf_chains} | nf_nodes=${nf_nodes} | auto_scale=${False}
| | Then Find NDR and PDR intervals using optimized search

*** Test Cases ***
| tc01-64B-1c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 64B | 1C
| | frame_size=${64} | phy_cores=${1}

| tc02-64B-2c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 64B | 2C
| | frame_size=${64} | phy_cores=${2}

| tc03-64B-4c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 64B | 4C
| | frame_size=${64} | phy_cores=${4}

| tc04-1518B-1c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 1518B | 1C
| | frame_size=${1518} | phy_cores=${1}

| tc05-1518B-2c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 1518B | 2C
| | frame_size=${1518} | phy_cores=${2}

| tc06-1518B-4c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 1518B | 4C
| | frame_size=${1518} | phy_cores=${4}

| tc07-9000B-1c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 9000B | 1C
| | frame_size=${9000} | phy_cores=${1}

| tc08-9000B-2c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 9000B | 2C
| | frame_size=${9000} | phy_cores=${2}

| tc09-9000B-4c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | 9000B | 4C
| | frame_size=${9000} | phy_cores=${4}

| tc10-IMIX-1c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | IMIX | 1C
| | frame_size=IMIX_v4_1 | phy_cores=${1}

| tc11-IMIX-2c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | IMIX | 2C
| | frame_size=IMIX_v4_1 | phy_cores=${2}

| tc12-IMIX-4c-eth-l2bd-2ch-24mif-12dcr1t-vppip4-ndrpdr
| | [Tags] | IMIX | 4C
| | frame_size=IMIX_v4_1 | phy_cores=${4}
ix.as_u64[0]; args6.dst_address.as_u64[1] = d->ip6_prefix.as_u64[1]; args6.dst_address_length = d->ip6_prefix_len; args6.adj_index = 0; args6.add_adj = &adj; args6.n_add_adj = 0; ip6_add_del_route(im6, &args6); /* Delete ip4 adjacency */ uword *q = ip4_get_route(im4, 0, 0, (u8 *)&d->ip4_src, 32); if (q) { u32 ai = q[0]; ip_lookup_main_t *lm4 = &ip4_main.lookup_main; ip_adjacency_t *adj4 = ip_get_adjacency(lm4, ai); u32 *p = (u32 *)&adj4->rewrite_data[0]; /* Delete route when no other domains use this source */ if (p[1] == 0) { memset(&args4, 0, sizeof(args4)); args4.table_index_or_table_id = 0; args4.flags = IP4_ROUTE_FLAG_DEL; args4.dst_address.as_u32 = d->ip4_prefix.as_u32; args4.dst_address_length = d->ip4_prefix_len; args4.adj_index = 0; args4.add_adj = &adj; args4.n_add_adj = 0; ip4_add_del_route(im4, &args4); } p[1]--; } pool_put(mm->domains, d); return 0; } static clib_error_t * sixrd_add_domain_command_fn (vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd) { unformat_input_t _line_input, *line_input = &_line_input; ip4_address_t ip4_prefix; ip6_address_t ip6_prefix; ip4_address_t ip4_src; u32 ip6_prefix_len, ip4_prefix_len, sixrd_domain_index; u32 num_m_args = 0; /* Optional arguments */ u32 mtu = 0; /* Get a line of input. */ if (!unformat_user(input, unformat_line_input, line_input)) return 0; while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT) { if (unformat(line_input, "ip6-pfx %U/%d", unformat_ip6_address, &ip6_prefix, &ip6_prefix_len)) num_m_args++; else if (unformat(line_input, "ip4-pfx %U/%d", unformat_ip4_address, &ip4_prefix, &ip4_prefix_len)) num_m_args++; else if (unformat(line_input, "ip4-src %U", unformat_ip4_address, &ip4_src)) num_m_args++; else if (unformat(line_input, "mtu %d", &mtu)) num_m_args++; else return clib_error_return(0, "unknown input `%U'", format_unformat_error, input); } unformat_free(line_input); if (num_m_args < 3) return clib_error_return(0, "mandatory argument(s) missing"); sixrd_create_domain(&ip6_prefix, ip6_prefix_len, &ip4_prefix, ip4_prefix_len, &ip4_src, &sixrd_domain_index, mtu); return 0; } static clib_error_t * sixrd_del_domain_command_fn (vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd) { unformat_input_t _line_input, *line_input = &_line_input; u32 num_m_args = 0; u32 sixrd_domain_index; /* Get a line of input. */ if (! unformat_user(input, unformat_line_input, line_input)) return 0; while (unformat_check_input(line_input) != UNFORMAT_END_OF_INPUT) { if (unformat(line_input, "index %d", &sixrd_domain_index)) num_m_args++; else return clib_error_return(0, "unknown input `%U'", format_unformat_error, input); } unformat_free(line_input); if (num_m_args != 1) return clib_error_return(0, "mandatory argument(s) missing"); sixrd_delete_domain(sixrd_domain_index); return 0; } static u8 * format_sixrd_domain (u8 *s, va_list *args) { sixrd_domain_t *d = va_arg(*args, sixrd_domain_t *); sixrd_main_t *mm = &sixrd_main; s = format(s, "[%d] ip6-pfx %U/%d ip4-pfx %U/%d ip4-src %U mtu %d", d - mm->domains, format_ip6_address, &d->ip6_prefix, d->ip6_prefix_len, format_ip4_address, &d->ip4_prefix, d->ip4_prefix_len, format_ip4_address, &d->ip4_src, d->mtu); return s; } static clib_error_t * show_sixrd_domain_command_fn (vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd) { sixrd_main_t *mm = &sixrd_main; sixrd_domain_t *d; if (pool_elts(mm->domains) == 0) vlib_cli_output(vm, "No SIXRD domains are configured..."); pool_foreach(d, mm->domains, ({vlib_cli_output(vm, "%U", format_sixrd_domain, d);})); return 0; } static clib_error_t * show_sixrd_stats_command_fn (vlib_main_t *vm, unformat_input_t *input, vlib_cli_command_t *cmd) { sixrd_main_t *mm = &sixrd_main; sixrd_domain_t *d; int domains = 0, domaincount = 0; if (pool_elts (mm->domains) == 0) vlib_cli_output (vm, "No SIXRD domains are configured..."); pool_foreach(d, mm->domains, ({ domains += sizeof(*d); domaincount++; })); vlib_cli_output(vm, "SIXRD domains structure: %d\n", sizeof (sixrd_domain_t)); vlib_cli_output(vm, "SIXRD domains: %d (%d bytes)\n", domaincount, domains); return 0; } /* * packet trace format function */ u8 * format_sixrd_trace (u8 *s, va_list *args) { CLIB_UNUSED(vlib_main_t *vm) = va_arg (*args, vlib_main_t *); CLIB_UNUSED(vlib_node_t *node) = va_arg (*args, vlib_node_t *); sixrd_trace_t *t = va_arg (*args, sixrd_trace_t *); u32 sixrd_domain_index = t->sixrd_domain_index; s = format(s, "SIXRD domain index: %d", sixrd_domain_index); return s; } VLIB_CLI_COMMAND(sixrd_add_domain_command, static) = { .path = "sixrd add domain", .short_help = "sixrd add domain ip6-pfx <ip6-pfx> ip4-pfx <ip4-pfx> ip4-src <ip4-addr>", .function = sixrd_add_domain_command_fn, }; VLIB_CLI_COMMAND(sixrd_del_command, static) = { .path = "sixrd del domain", .short_help = "sixrd del domain index <domain>", .function = sixrd_del_domain_command_fn, }; VLIB_CLI_COMMAND(show_sixrd_domain_command, static) = { .path = "show sixrd domain", .function = show_sixrd_domain_command_fn, }; VLIB_CLI_COMMAND(show_sixrd_stats_command, static) = { .path = "show sixrd stats", .function = show_sixrd_stats_command_fn, }; /* * This routine exists to convince the vlib plugin framework that * we haven't accidentally copied a random .dll into the plugin directory. * * Also collects global variable pointers passed from the vpp engine */ clib_error_t * vlib_plugin_register (vlib_main_t * vm, vnet_plugin_handoff_t * h, int from_early_init) { clib_error_t * error = 0; sixrd_main_t *mm = &sixrd_main; mm->vnet_main = vnet_get_main(); mm->vlib_main = vm; return error; } static clib_error_t * sixrd_init (vlib_main_t * vm) { clib_error_t * error = 0; sixrd_main_t *mm = &sixrd_main; vlib_node_t * ip6_lookup_node = vlib_get_node_by_name(vm, (u8 *)"ip6-lookup"); vlib_node_t * ip4_lookup_node = vlib_get_node_by_name(vm, (u8 *)"ip4-lookup"); vlib_node_t * ip6_sixrd_node = vlib_get_node_by_name(vm, (u8 *)"ip6-sixrd"); vlib_node_t * ip4_sixrd_node = vlib_get_node_by_name(vm, (u8 *)"ip4-sixrd"); ASSERT(ip6_lookup_node && ip4_lookup_node && ip6_sixrd_node && ip4_sixrd_node); mm->ip6_lookup_next_index = vlib_node_add_next(vm, ip6_lookup_node->index, ip6_sixrd_node->index); mm->ip4_lookup_next_index = vlib_node_add_next(vm, ip4_lookup_node->index, ip4_sixrd_node->index); return error; } VLIB_INIT_FUNCTION (sixrd_init);